Determining the scale of coal mining in an ecologically fragile mining area under the constraint of water resources carrying capacity

被引:30
作者
Chi, Mingbo [1 ,2 ]
Zhang, Dongsheng [2 ]
Zhao, Qiang [2 ]
Yu, Wei [2 ]
Liang, Shuaishuai [2 ]
机构
[1] State Key Lab Water Resource Protect & Utilizat C, Beijing, Peoples R China
[2] China Univ Min & Technol, Sch Mines, State Key Lab Coal Resources & Safe Min CUMT, Xuzhou, Jiangsu, Peoples R China
关键词
Scale of coal mining; WRCC; Optimal control; Ecologically fragile mining area; Water-based mining scale; Decision-making; ENVIRONMENT; CHINA; PRODUCTIVITY; GROUNDWATER; PROJECT; SAFETY;
D O I
10.1016/j.jenvman.2020.111621
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
A reasonable mining scale is very important for the development of mining areas. In view of the lack of water resources in arid and semi-arid areas, this paper studies the scale of coal mining in arid and semi-arid areas under the constraint of the water resources carrying capacity (WRCC) with the aim of realizing the conservation mining of ecological environment. From the perspectives of market demand side, production side and the constraint side, a "trinity" decision model was constructed to investigate the main factors influencing the scale of coal mining. By introducing the optimal control theory with profit taken as objective function, the coal price and coal reserves were regarded as boundary conditions, and WRCC was set as constraint condition. Based on H-J-B equation algorithm, the decision-making equation for mining scale under the constraints of market demand and WRCC was obtained. Through comparing the mining scales under the two constraints, the mode of "water-based mining scale" was formulated, which is conductive for realizing the balance between coal mining and ecological environment development.
引用
收藏
页数:10
相关论文
共 54 条
[1]   Application of a life cycle assessment to compare environmental performance in coal mine tailings management [J].
Adiansyah, Joni Safaat ;
Haque, Nawshad ;
Rosano, Michele ;
Biswas, Wahidul .
JOURNAL OF ENVIRONMENTAL MANAGEMENT, 2017, 199 :181-191
[2]   The regulation of China's township and village coal mines: a study of complexity and ineffectiveness [J].
Andrews-Speed, P ;
Yang, MY ;
Shen, L ;
Cao, S .
JOURNAL OF CLEANER PRODUCTION, 2003, 11 (02) :185-196
[3]   Utilization of CFBC Fly Ash as a Binder to Produce In-Furnace Desulfurization Sorbent [J].
Baek, Chulseoung ;
Seo, Junhyung ;
Choi, Moonkwan ;
Cho, Jinsang ;
Ahn, Jiwhan ;
Cho, Kyehong .
SUSTAINABILITY, 2018, 10 (12)
[4]   Quantitative evaluation of coal-mining geological condition [J].
Baolong Zhu .
ISMSSE 2011, 2011, 26
[5]   Integrated method of RS and GPR for monitoring the changes in the soil moisture and groundwater environment due to underground coal mining [J].
Bian, Zhengfu ;
Lei, Shaogang ;
Inyang, Hilary I. ;
Chang, Luqun ;
Zhang, Richen ;
Zhou, Chengjun ;
He, Xiao .
ENVIRONMENTAL GEOLOGY, 2009, 57 (01) :131-142
[6]   Groundwater as an environmental constraint of longwall coal mining [J].
Booth, CJ .
ENVIRONMENTAL GEOLOGY, 2006, 49 (06) :796-803
[7]   A stochastic dynamic model for optimal timing of investments in new generation capacity in restructured power systems [J].
Botterud, Audun ;
Korpas, Magnus .
INTERNATIONAL JOURNAL OF ELECTRICAL POWER & ENERGY SYSTEMS, 2007, 29 (02) :163-174
[8]  
Boyan K., 2007, COAL FUTURE SUPPLY P
[9]   Prediction of water resource carrying capacity by the analytic hierarchy process-fuzzy discrimination method in a mining area [J].
Chi, Mingbo ;
Zhang, Dongsheng ;
Fan, Gangwei ;
Zhang, Wei ;
Liu, Honglin .
ECOLOGICAL INDICATORS, 2019, 96 :647-655
[10]  
Danicic D., 2009, MIN SCI TECHNOL CHIN, V19, P679, DOI DOI 10.1016/S1674-5264(09)60126-5